Hausen am Albis, Switzerland

Alexander Schmid

USPTO Granted Patents = 1 

 

Average Co-Inventor Count = 2.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Alexander Schmid - Innovator in Centrifugal Pump Technology

Introduction

Alexander Schmid is a notable inventor based in Hausen am Albis, Switzerland. He has made significant contributions to the field of fluid dynamics through his innovative designs. His work primarily focuses on the development of advanced centrifugal pumps.

Latest Patents

Alexander Schmid holds a patent for a centrifugal pump and a pump housing. This centrifugal pump is designed for conveying fluids and includes a pump housing, a rotor, and a stator. The rotor is configured to convey the fluid within the housing, while the stator forms an electromagnetic rotary drive that allows the rotor to rotate along an axial direction. Notably, the stator serves as both a bearing and drive component, enabling the rotor to be magnetically driven and levitated without contact. This innovative design allows for passive magnetic levitation in the axial direction and active magnetic levitation in a radial plane. The pump housing consists of a bottom and a cover, with the rotor positioned between them. An indentation in either the bottom or cover generates local turbulence, enhancing the pump's efficiency.

Career Highlights

Alexander Schmid is currently associated with Levitronix GmbH, a company known for its cutting-edge technologies in fluid handling. His work at Levitronix has allowed him to further develop his expertise in pump technology and contribute to the advancement of the industry.

Collaborations

One of his notable coworkers is Marcel Stettler, with whom he collaborates on various projects related to pump technology and innovation.

Conclusion

Alexander Schmid's contributions to centrifugal pump technology exemplify his innovative spirit and dedication to advancing fluid dynamics. His patent reflects a significant leap in pump design, showcasing the potential for improved efficiency and performance in fluid conveyance systems.

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